首页> 外文期刊>Behavioural Brain Research: An International Journal >Serotonergic control of ingestive and post-ingestive behaviors in pigeons (Columba livia): The role of 5-HT1A receptor-mediated central mechanisms
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Serotonergic control of ingestive and post-ingestive behaviors in pigeons (Columba livia): The role of 5-HT1A receptor-mediated central mechanisms

机译:鸽子中摄取和摄入后行为的Serotonergic控制(Columba Livia):5-HT1A受体介导的中央机制的作用

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Central injections of serotonin (5-HT) produce hyperdipsic and hypnogenic behavioral effects that are correlated to decreased Fos-immunorreactivity of 5-HT neurons in free-feeding pigeons. We herein (1) probed the role of 5-HT1A receptors on the 5-HT- or 8-OH-DPAT-evoked postprandial behaviors and (2) described the sleep-waking states (waking, W; drowsiness, D; slow-wave sleep, SWS; rapid-eye movement sleep, REMS) and sleep architecture of free-feeding pigeons after these treatments. Latency, frequency and duration of feeding, drinking, preening, exploratory and sleep-like behaviors (SLB) were examined after intracerebroventricular (ICV) injections of 5-HT (0,50 or 150 nmol) or 8-OH-DPAT (DPAT, 0 or 30 nmol) in pigeons pretreated with the 5-HT1A antagonist WAY100635 (WAY, 0, 0.1, 0.3 or 1 nmol). Additionally, the acute (1 h) waking-sleep-related electrographic activity in the hippocampus (HP) was examined after ICV injections of 5-HT (150 or 300 nmol) or DPAT (30 or 60 nmol) in pigeons pretreated with WAY (0 or 1 nmol). 5-HT and DPAT acutely increased drinking and then sleep: all doses of WAY attenuated the 5-HT (50 nmol) -induced dipsogenic effect, but left unchanged the effects of the 150 nmol 5-HT dose. The WAY 0.1 nmol dose blocked the SLB induced by the 5-HT 50 nmol dose. Given before the vehicle (VEH) injections, WAY does not affect water or food intake, but increased the SLB duration at all doses. DPAT injections increased feeding, drinking and SLB. All the WAY doses attenuated the DPAT-induced drinking and feeding responses, and the WAY 0.1 and 0.3 nmol doses reduced DPAT-induced SLB. DPAT or 5-HT injections decreased the duration of electrographically-determined waking, increased the durations of D and induced the emergence of SWS and REMS states indistinguishable from the hippocampal EEG associated with spontaneous sleep, as judged from visual and spectral analysis. WAY (1 nmol) increased SWS and D, and potentiated the 5-HT- and DPAT-induced SWS. These data suggest that 5-HT-induced drinking depends on the activation of presynaptic 5-HT1A receptors, while 5-HT1A autoreceptor activation contributes to the 5-HT-induced sleep. 5-HT-induced drinking and sleep behaviors may thus be provoked by a 5-HT1A-evoked, rebound-like reduction in central 5-HTergic activity. These data also indicate that an ongoing, tonic and inhibitory influence of central 5-HT circuits may participate in the control of feeding, drinking and rest behaviors in pigeons during the wake, nibbling diurnal state. These mechanisms appear to be comparable to those found in mammals, suggesting that they may represent a conserved, plesiomorphic functional trait of the amniotes brain. (C) 2012 Elsevier B.V. All rights reserved.
机译:血清素(5-HT)的中央注射产生超脂肪素和催眠的行为效应,其与在游离饲养的鸽子中的5-HER神经元的FOS-ImmunIsective降低。在此(1)探讨了5-HT1A受体对5-HT1A或8-OH-DPAT诱发的餐后行为的作用,(2)描述了睡眠唤醒状态(唤醒,W; Dowsiness,D;慢 - 波睡眠,SWS;在这些治疗后自由喂养鸽子的快速眼球运动睡眠,REMS和睡眠建筑。在脑室(ICV)注射5-HT(0.50或150 nmol)或8-OH-DPAT(DPAT,DPAT,用5-HT1A拮抗剂WAT100635(0,0,0.1,0.3或1nmol)预处理的鸽子中的0或30个Nmol)。另外,在ICV注射在预处理的鸽子(150或300nmol)或DPAT(30或60nmol)后,检查海马(HP)中的急性(1小时)醒着睡眠相关的拍摄活性。 0或1 nmol)。 5-HT和DPAT急剧增加饮用,然后睡眠:所有剂量的方式减弱5-HT(50诺米酚)诱导的尖端效果,但留下了150nmol 5-HT剂量的效果。 0.1 nmol剂量的方式阻断了由5-HT 50 Nmol剂量诱导的SLB。在车辆(车辆)注射之前给出,方法不影响水或食物摄入量,而是增加了所有剂量的SLB持续时间。 DPAT注射增加喂养,饮用和单缝。所有方式剂量都减弱了DPAT诱导的饮用和喂养反应,以及0.1和0.3nmol剂量的方式还原DPAT诱导的SLB。 DPAT或5-HT注射减少了向照射唤醒的持续时间降低,增加了D的持续时间,并诱导了来自与视觉和光谱分析的自发睡眠相关的海马脑电图难以区分的SWS和REMS状态。方式(1nmol)增加了SWS和D,并提出了5-HT和DPAT诱导的SWS。这些数据表明,5-HT诱导的饮用依赖于突触前5-HT1A受体的激活,而5-HT1A自身反应活化有助于5-HT诱导的睡眠。因此,可以通过中央5- htergic活性的5-HT1A诱发的反弹,降低5-HT诱导的饮用和睡眠行为。这些数据还表明中央5-HT电路的持续,补品和抑制影响可以参与在尾巴啃昼夜垂直于鸽子的饲料,饮用和休息行为的控制。这些机制似乎与哺乳动物中发现的机制相当,表明它们可能代表羊膜脑脑的保守的透明官能性状。 (c)2012 Elsevier B.V.保留所有权利。

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